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A Highly Integrated Biomedical Multiprocessor SoC Design for a Wireless Bedside Monitoring System

机译:一种高度集成的生物医学多处理器SOC设计,用于无线床头柜监测系统

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This paper presents a highly integrated multiprocessor system-on-chip (SoC) design, enabling real-time processing of multi-biomedical signals in a wireless bedside monitoring system. This system includes a real-time online recursive independent component analysis (ORICA) processor to automatically remove brain electroencephalogram (EEG) artifacts signals, a heart rate variability (HRV) analysis processor for monitoring electrocardiogram (ECG) signals, and a basic biomedical signal processor for monitoring common physiological data such as oxygen saturation, blood pressure, or body temperature. The multiprocessor chip is fabricated using TSMC 90 nm CMOS technology, and occupies a core area of 1,600 x 1,600 um~2. Simulated power consumption is 15.89 mW under the conditions of 1.0V core supply voltage and 64 MHz clock operation frequency.
机译:本文介绍了一种高度集成的多处理器系统系统(SOC)设计,使无线床边监测系统中的多生物医学信号的实时处理能够进行实时处理。 该系统包括实时在线递归独立分量分析(ORICA)处理器,以自动删除脑脑电图(EEG)伪影信号,心率变异性(HRV)分析处理器用于监测心电图(ECG)信号,以及基本的生物医学信号处理器 用于监测常见的生理数据,如氧饱和度,血压或体温。 使用TSMC 90nm CMOS技术制造多处理器芯片,占据1,600 x 1,600 um〜2的核心区域。 在1.0V核心电源电压和64 MHz时钟运行频率的条件下,模拟功耗为15.89 MW。

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